Optimal Sequence of Boluohui Protropine-6-Hydroxylase Gene and Its Application
A hydroxylase and gene optimization technology, applied in the field of genetic engineering and bioengineering, can solve the problems of unreported P6H gene expression and achieve the effects of improving enzyme catalytic efficiency, increasing content, and reducing production costs
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[0031] In order to better illustrate the content of the invention, the present invention will be further verified by specific examples below. It is specially stated here that the embodiments are only for describing the present invention more directly, they are only a part of the present invention, and cannot constitute any limitation to the present invention.
[0032] as attached figure 1 The synthetic pathways of sanguinarine and chelerythrine in Boluohui shown, protropine-6-hydroxylase (P6H) is involved in the biogenesis of sanguinarine (SAN) and chelerythrine (CHE) Synthetic steps, which can catalyze allocryptine (ALL) to generate dihydrochelerythrine (DHCHE) and catalyze proopiate (PRO) to generate dihydrosanginarine (DHSAN). Since P6H belongs to cytochrome P450 oxidoreductase, as a monooxygenase, it needs to be co-expressed with cytochrome P450 reductase (CPR) to play a role in protein catalysis, and CPR plays the role of transferring electrons in the reaction.
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